Protective effect of Luffa cylindrica Roemer against dexamethasone-induced muscle atrophy in primary rat skeletal muscle cells

被引:0
作者
Changhwan Yeo
Hyunseong Kim
Wan-Jin Jeon
Junseon Lee
Jin Young Hong
Hyun Kim
Yoon Jae Lee
Seung Ho Baek
In-Hyuk Ha
机构
[1] Jaseng Medical Foundation,Jaseng Spine and Joint Research Institute
[2] Dongguk University,College of Korean Medicine
来源
Journal of Muscle Research and Cell Motility | 2024年 / 45卷
关键词
Glucocorticoids; Muscle atrophy; Dexamethasone; Roemer;
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学科分类号
摘要
Glucocorticoids (GCs) are commonly used in the treatment of chronic inflammatory conditions. However, the administration of high doses and long-term use of GCs can induce muscle atrophy (MA) in patients, leading to a decline in quality of life and increased mortality. MA leads to protein degradation in skeletal muscle, resulting in a reduction of muscle mass. This process is triggered by GCs like dexamethasone (DEX), which induce the expression of E3 ubiquitin ligases, namely Atrogin-1 and muscle RING-finger protein-1 (MuRF1). In this study, we examined the anti-MA potential of Luffa cylindrica Roemer (LCR) on DEX-treated primary skeletal myotubes. Primary skeletal myotubes stimulated with LCR alone resulted in a significant upregulation of myotube development, characterized by an increase in both the number and diameter of myotubes. Contrastingly, combined treatment with LCR and DEX reduced the expression of Atrogin-1, while treatment with DEX alone induced the expression of MuRF1. Furthermore, LCR treatment successfully restored the number and diameter of myotubes that had been diminished by DEX treatment. These findings suggest that LCR holds potential for treating MA, as an accelerating effect on muscle development and anti-MA effects on primary skeletal muscle cells were observed.
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页码:1 / 10
页数:9
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[1]  
Alge CS(2006)Differential protein profiling of primary versus immortalized human RPE cells identifies expression patterns associated with cytoskeletal remodeling and cell survival J Proteome Res 5 862-878
[2]  
Hauck SM(2022)The beneficial therapeutic effects of plant-derived natural products for the treatment of Sarcopenia J Cachexia Sarcopenia Muscle 13 2772-2790
[3]  
Priglinger SG(2020)Isolation of muscle stem cells from rat skeletal muscles Stem Cell Res 43 101684-R1077
[4]  
Kampik A(2009)Quercetin increases brain and muscle mitochondrial biogenesis and exercise tolerance Am J Physiol Regul Integr Comp Physiol 296 R1071-648
[5]  
Ueffing M(2015)Effect of standardized fruit extract of Luffa cylindrica on oxidative stress markers in hydrogen peroxide induced cataract Indian J Pharmacol 47 644-335
[6]  
Bagherniya M(2011)The role and regulation of MAFbx/atrogin-1 and MuRF1 in skeletal muscle atrophy Pflugers Arch 461 325-94
[7]  
Mahdavi A(2014)Effects of (-)-epicatechin on molecular modulators of skeletal muscle growth and differentiation J Nutr Biochem 25 91-443
[8]  
Shokri-Mashhadi N(2017)Dexamethasone Treatment at the myoblast stage enhanced C2C12 myocyte differentiation Int J Med Sci 14 434-205
[9]  
Banach M(1999)Glucocorticoids and muscle catabolism Curr Opin Clin Nutr Metab Care 2 201-C843
[10]  
Von Haehling S(2015)Clinical review: intensive care unit acquired weakness Crit Care 19 274-1612